航天器桁架结构轻量化设计研究

Fuming Zeng, Jianzhong Yang, Jian Wang
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引用次数: 1

摘要

由于桁架结构能有效地承受集中载荷,因此通常采用桁架结构作为航天器的主要结构形式。在航天器的概念设计中,轻量化设计已成为首要考虑的问题。桁架结构轻量化设计的实现要经过拓扑优化、尺寸优化和复合材料优化三个过程。在每一个优化过程中,都会选择合适的算法,如传统的最优性准则法、数学规划法和模拟自然界生长进化过程的智能算法。根据实际流程和算法,结合工程实践和商业软件,对航天器桁架结构轻量化设计的实施进行了总结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on light weight design of truss structures of spacecrafts
Truss structure is usually adopted as the main structure form for spacecrafts due to its high efficiency in supporting concentrated loads. Light-weight design is now becoming the primary concern during conceptual design of spacecrafts. Implementation of light-weight design on truss structure always goes through three processes: topology optimization, size optimization and composites optimization. During each optimization process, appropriate algorithm such as the traditional optimality criterion method, mathematical programming method and the intelligent algorithms which simulate the growth and evolution processes in nature will be selected. According to the practical processes and algorithms, combined with engineering practice and commercial software, summary is made for the implementation of light-weight design on truss structure for spacecrafts.
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